Hi All,

The authors submitted three I-Ds to describe a rate control mechanism for 
Segment Routing over IPv6 (SRv6) network slices. This mechanism not only 
guarantees the committed rate of the slice but also improves overall link 
utilization while aiming to ensure high-throughput transmission of AI/HPC 
applications.


https://datatracker.ietf.org/doc/draft-lx-spring-srv6-rate-control/
https://datatracker.ietf.org/doc/draft-xz-6man-rate-option/
https://datatracker.ietf.org/doc/draft-xz-rtgwg-srv6-rate-notification/

We also have a side meeting at IETF 126: HP-WAN to disucuss the rate-based SRv6 
as following shown.
Time: ‌Wednesday, July 22st, 12:30-14:00(Vienna),18:30-20:00(Beijing)
Location: Park Suite 4‌
IETF Webex: https://ietf.webex.com/meet/sidemeetings1
Github: https://github.com/xiongquan1230/IETF126-Sidemeeting-HP-WAN/tree/main


Look forward to your attention and discussion with us. Thanks!

Best Regards,
Quan



Original



From: [email protected] <[email protected]>
  
To: 熊泉00091065;朱向阳10217067;Yisong Liu <[email protected]>;
  
Date: 2026年07月03日 15:10
  
Subject: New Version Notification for draft-lx-spring-srv6-rate-control-00.txt
  


A new version of Internet-Draft draft-lx-spring-srv6-rate-control-00.txt 
hasbeen successfully submitted by Quan Xiong and posted to theIETF repository. 
Name:     draft-lx-spring-srv6-rate-controlRevision: 00Title:    SRv6-based 
Rate ControlDate:     2026-07-03Group:    Individual SubmissionPages:    8URL:  
    
https://www.ietf.org/archive/id/draft-lx-spring-srv6-rate-control-00.txtStatus: 
  https://datatracker.ietf.org/doc/draft-lx-spring-srv6-rate-control/HTML:     
https://www.ietf.org/archive/id/draft-lx-spring-srv6-rate-control-00.htmlHTMLized:
 https://datatracker.ietf.org/doc/html/draft-lx-spring-srv6-rate-control 
Abstract:    This document describes a rate control mechanism for Segment 
Routing   over IPv6 (SRv6) network slices.  It addresses the challenge of   
balancing resource utilization and congestion avoidance in over-   committed 
slice deployments.  The mechanism leverages a token-based   scheduler to 
differentiate between Committed Information Rate (CIR)   and Peak Information 
Rate (PIR) traffic, and defines procedures for   calculating initial PIR values 
and dynamically adjusting them based   on network conditions.   Dynamic rate 
adjustments are triggered by localized congestion or   underutilization, 
enabling proactive rate control and efficient   bandwidth sharing among slices 
sharing common physical links. The IETF Secretariat
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